 
      Superplastic Forming of Advanced Metallic Materials e-bog
        
        
        1386,89 DKK
        
        (inkl. moms 1733,61 DKK)
        
        
        
        
      
      
      
      Ultra fine-grained metals can show exceptional ductility, known as superplasticity, during sheet forming. The higher ductility of superplastic metals makes it possible to form large and complex components in a single operation without joints or rivets. The result is less waste, lower weight and manufacturing costs, high precision and lack of residual stress associated with welding which makes c...
        
        
      
            E-bog
            1386,89 DKK
          
          
        
    Forlag
    Woodhead Publishing
  
  
  
    Udgivet
    27 juni 2011
    
  
  
  
  
    Længde
    384 sider
  
  
  
    Genrer
    
      Industrial chemistry and manufacturing technologies
    
  
  
  
  
    Sprog
    English
  
  
    Format
    epub
  
  
    Beskyttelse
    LCP
  
  
    ISBN
    9780857092779
  
Ultra fine-grained metals can show exceptional ductility, known as superplasticity, during sheet forming. The higher ductility of superplastic metals makes it possible to form large and complex components in a single operation without joints or rivets. The result is less waste, lower weight and manufacturing costs, high precision and lack of residual stress associated with welding which makes components ideal for aerospace, automotive and other applications. Superplastic forming of advanced metallic materials summarises key recent research on this important process.Part one reviews types of superplastic metals, standards for superplastic forming, processes and equipment. Part two discusses ways of modelling superplastic forming processes whilst the final part of the book considers applications, including superplastic forming of titanium, aluminium and magnesium alloys.With its distinguished editor and international team of contributors, Superplastic forming of advanced metallic materials is a valuable reference for metallurgists and engineers in such sectors as aerospace and automotive engineering.Note: The Publishers wish to point out an error in the authorship of Chapter 3 which was originally listed as: G. Bernhart, Clement Ader Institute, France. The correct authorship is: G Bernhart, P. Lours, T. Cutard, V. Velay, Ecole des Mines Albi, France and F. Nazaret, Aurock, France. The Publishers apologise to the authors for this error.Reviews types of superplastic metals and standards for superplastic formingDiscusses the modelling of superplastic forming, including mathematical and finite element modellingExamines various applications, including superplastic forming of titanium, aluminiun and magnesium alloys
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